A Miniaturized Shoe-Integrated Wearable Sensory System for Continuous Passive Body Weight Monitoring

IF 2.2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Asim Arif;Shahzad Muzaffar;Ibrahim M. Elfadel
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引用次数: 0

Abstract

In this letter, we report on the very first shoe-integrated sensory system for continuous body weight monitoring that is free of motion sensors and that can operate uninterrupted on a coin cell battery for 20 days. In contrast with shoe-integrated sensory systems that focus on gait analysis, fall detection, or diabetes foot, the proposed system is designed to enable continuous body weight monitoring “in the wild.” Its implementation features a custom highly miniaturized PCB that can be inserted into the back of the shoe, a unique undershoe interconnect fabric for signal routing and processing, and a smartphone app for body weight monitoring and recording. This novel wearable sensory system represents a major advance over our prior prototype, achieving a volume reduction of more than 98%, a weight reduction of more than 97%, and the replacement of a bulky 10 000 mAh battery pack with a 750 mAh coin cell battery. The novel wearable sensory system addresses the major clinical problem of patient compliance with monitoring and treatment protocols that require frequent measurements of body weight, as is the case with congestive heart failure, diabetes, and several forms of cancer.
用于连续被动体重监测的小型化鞋集成可穿戴传感系统
在这封信中,我们报告了第一个集成在鞋子上的连续体重监测传感系统,该系统没有运动传感器,可以在硬币电池上不间断地运行20天。与专注于步态分析、跌倒检测或糖尿病足的鞋集成传感系统相比,该系统旨在实现“在野外”持续的体重监测。它的实现特点是一个定制的高度小型化的PCB,可以插入到鞋的后面,一个独特的鞋底互连织物,用于信号路由和处理,以及一个用于体重监测和记录的智能手机应用程序。这种新颖的可穿戴传感系统代表了我们之前的原型的重大进步,实现了超过98%的体积缩小,超过97%的重量减轻,并且用750毫安时的硬币电池取代了笨重的10,000毫安时电池组。这种新型的可穿戴传感系统解决了患者是否遵守需要频繁测量体重的监测和治疗方案的主要临床问题,如充血性心力衰竭、糖尿病和几种癌症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IEEE Sensors Letters
IEEE Sensors Letters Engineering-Electrical and Electronic Engineering
CiteScore
3.50
自引率
7.10%
发文量
194
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